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Experimental and Modelling Study of a Dual-Layer NH3 Slip Monolith Catalyst for Automotive SCR Aftertreatment Systems

机译:车用SCR后处理系统双层NH3滑动整体催化剂的实验与建模研究。

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The approach to the development of a chemically and physically consistent mathematical model of ASC dual-layer (SCR + PGM) washcoated monolith converters is herein presented. Steady-state and transient kinetic runs were performed over each one of the two ASC components (SCR and PGM) in the form of powders and also over the two mixed powdered catalysts, thus acquiring information on the interactions between the SCR and the PGM catalytic chemistries. Global kinetic models were fitted to the SCR and to the PGM catalyst data, and validated against experiments performed over both washcoated single-layered SCR and PGM monoliths and over a full dual-layer ASC honeycomb catalyst (SCR layer on top). It was found that the dual-layer (SCR + PGM) ASC architecture grants increased N2 selectivities compared to a PGM-only washcoat.
机译:本文介绍了开发ASC双层(SCR + PGM)涂层整体式转化器的化学和物理一致性数学模型的方法。对两种形式的粉末状ASC组分(SCR和PGM)以及两种混合的粉状催化剂进行稳态和瞬态动力学分析,从而获得有关SCR和PGM催化化学反应的信息。将全局动力学模型拟合到SCR和PGM催化剂数据中,并针对在修补基面涂层的单层SCR和PGM整料以及完整的双层ASC蜂窝催化剂(顶部SCR层)上进行的实验进行了验证。已发现,与仅使用PGM的修补基面涂层相比,双层(SCR + PGM)的ASC结构可提高N2的选择性。

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